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Information Journal Paper

Title

A Low-power, CMOS Optical Communication Receiver System for 5Gbps Applications based on RGC Structure

Pages

  57-66

Abstract

 An optical communication receiver system is presented in this research using 65nm CMOS, which consists of three lowpower active differential stages as Limiting Amplifier (LA) following an ultra-Low-Power RGC-Based Transimpedance Amplifier (RB-TIA). The presented active circuit of the RB-TIA is followed by a gain stage that extends the-3dB frequency of the circuit by creating a resonance for the load capacitance. Thus, needless of consuming extra power, a wide-bandwidth circuit has been designed. In addition, employing active-inductor loads within the LA stages enables obtaining a 5Gbps receiver system. The RB-TIA consumes 573μ W and provides 3. 52GHz frequency, while the complete Optical Receiver consumes only 4. 76mW power to provide-3dB frequency of 3. 5GHz and high gain of 80dB (10’ 000). The circuits have been mathematically presented and discussed, and simulations have justified the presented circuit design.

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  • Cite

    APA: Copy

    Honarmand, Sima, Zohoori, Soorena, & Abbasi, Kavoos. (2020). A Low-power, CMOS Optical Communication Receiver System for 5Gbps Applications based on RGC Structure. MAJLESI JOURNAL OF ELECTRICAL ENGINEERING, 14(4), 57-66. SID. https://sid.ir/paper/764347/en

    Vancouver: Copy

    Honarmand Sima, Zohoori Soorena, Abbasi Kavoos. A Low-power, CMOS Optical Communication Receiver System for 5Gbps Applications based on RGC Structure. MAJLESI JOURNAL OF ELECTRICAL ENGINEERING[Internet]. 2020;14(4):57-66. Available from: https://sid.ir/paper/764347/en

    IEEE: Copy

    Sima Honarmand, Soorena Zohoori, and Kavoos Abbasi, “A Low-power, CMOS Optical Communication Receiver System for 5Gbps Applications based on RGC Structure,” MAJLESI JOURNAL OF ELECTRICAL ENGINEERING, vol. 14, no. 4, pp. 57–66, 2020, [Online]. Available: https://sid.ir/paper/764347/en

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